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Acute Ethanol Exposure during Synaptogenesis Rapidly Alters Medium Spiny Neuron Morphology and Synaptic Protein Expression in the Dorsal Striatum
Authors:Erin Clabough  James Ingersoll  Tyler Reekes  Alyssa Gleichsner  Amy Ryan
Affiliation:1.Department of Psychology, University of Virginia, Charlottesville, VA 22904, USA;2.Department of Biology, Hampden-Sydney College, Hampden-Sydney, VA 23943, USA; (J.I.); (T.R.);3.Department of Pharmacology, Toxicology, and Neuroscience, Louisiana State University Health Sciences Center, Shreveport, LA 71104, USA;4.Department of Biological Science, SUNY Plattsburgh, Plattsburgh, NY 12901, USA; (A.G.); (A.R.)
Abstract:Fetal alcohol spectrum disorders are caused by the disruption of normal brain development in utero. The severity and range of symptoms is dictated by both the dosage and timing of ethanol administration, and the resulting developmental processes that are impacted. In order to investigate the effects of an acute, high-dose intoxication event on the development of medium spiny neurons (MSNs) in the striatum, mice were injected with ethanol on P6, and neuronal morphology was assessed after 24 h, or at 1 month or 5 months of age. Data indicate an immediate increase in MSN dendritic length and branching, a rapid decrease in spine number, and increased levels of the synaptic protein PSD-95 as a consequence of this neonatal exposure to ethanol, but these differences do not persist into adulthood. These results demonstrate a rapid neuronal response to ethanol exposure and characterize the dynamic nature of neuronal architecture in the MSNs. Although differences in neuronal branching and spine density induced by ethanol resolve with time, early changes in the caudate/putamen region have a potential impact on the execution of complex motor skills, as well as aspects of long-term learning and addictive behavior.
Keywords:environmental chemicals  maternal exposure  cognitive deficits  fetal alcohol spectrum disorder  dendritic morphology  striatum
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